Quantification of Crystal Chemistry of Fe‐Mg Carbonates by Raman Microspectroscopy and Near‐Infrared Remote Sensing

Author:

Beck Pierre1ORCID,Beyssac Olivier2ORCID,Schmitt Bernard1ORCID,Royer Clement3,Mandon Lucia1ORCID,Boulard Eglantine2ORCID,Rividi Nicolas2,Cloutis Edward A.4ORCID

Affiliation:

1. Univ. Grenoble Alpes CNRS IPAG Grenoble France

2. Institut de Minéralogie de Physique des Matériaux et de Cosmochimie CNRS UMR 7590 Sorbonne Université Muséum National d’Histoire Naturelle Paris France

3. Institut d’Astrophysique Spatiale CNRS/Paris‐Saclay University Paris France

4. Department of Geography University of Winnipeg Winnipeg MB Canada

Abstract

AbstractOn Earth, carbonate minerals are widely used as recorders of the geological environments in which they formed. Here, we present a method designed to retrieve the crystal chemistry of Fe‐Mg carbonate minerals using infrared remote sensing or Raman spectroscopy. We analyzed a suite of well‐characterized Fe‐Mg carbonate minerals for which Raman spectra were obtained in two different laboratories, and IR spectra were measured in reflectance and transmission from the visible range to 25‐μm. We built calibration lines for the dependence of fundamental and harmonic vibrational modes position to the Mg# (defined as Mg# = 100 × Mg/(Mg + Fe + Ca + Mn)). These calibrations should enable retrieval of Mg# based on spectroscopic observations with a typical accuracy of 10. We discuss the framework of applicability of these calibrations and apply them to a typical CRISM spectrum of carbonates from the Nilli Fossae region of Mars.

Publisher

American Geophysical Union (AGU)

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